Area of research
Biomedical Engineering · Molecular Biology
Research interest
Research interests include 3D Printing in Biomedical Research, Innovative Microfluidic and Catalytic Techniques Innovation, Microfluidic and Capillary Electrophoresis Applications, and Genomics and Phylogenetic Studies.
Translational contrast agents for use in fluorescence image-guided tumor surgery
Microbiome Single Cell Atlases Generated with a Commercial Instrument
Droplet microfluidics strategies for overcoming bottlenecks in antibiotics discovery
Droplet Microfluidics in the Antibiotic Discovery Pipeline: From Microbial Ecology to Resistance Mechanisms
In vivo assembly enhanced binding effect augments tumor specific ferroptosis therapy
Cascade-Activatable Nanoprodrug System Augments Sonochemotherapy of Bladder Cancer
Inducing mitochondriopathy-like damages by transformable nucleopeptide nanoparticles for targeted therapy of bladder cancer
In vivo self-assembled bispecific fluorescence probe for early detection of bladder cancer and metastasis
Stimuli-Responsive Nanomaterials for Tumor Immunotherapy
An In Vivo Self‐Assembled Bispecific Nanoblocker for Enhancing Tumor Immunotherapy
New Insights for Biosensing: Lessons from Microbial Defense Systems
Droplet-microfluidics-assisted sequencing of HIV proviruses and their integration sites in cells from people on antiretroviral therapy
Passive micropumping in microfluidics for point-of-care testing
Rapid lipolytic oscillations in <i>ex vivo</i> adipose tissue explants revealed through microfluidic droplet sampling at high temporal resolution
Rapid Lipolytic Oscillations in Ex-Vivo Adipose Tissue Explants Revealed Through Microfluidic Droplet Sampling at High Temporal Resolution
Rapid Lipolytic Oscillations in Ex-Vivo Adipose Tissue Explants Revealed Through Microfluidic Droplet Sampling at High Temporal Resolution
Automated microfluidic droplet sampling with integrated, mix-and-read immunoassays to resolve endocrine tissue secretion dynamics
Advancement of analytical modes in a multichannel, microfluidic droplet-based sample chopper employing phase-locked detection
Microfluidic systems for studying dynamic function of adipocytes and adipose tissue
Automated Microfluidic Droplet-Based Sample Chopper for Detection of Small Fluorescence Differences Using Lock-In Analysis
3D-templated, fully automated microfluidic input/output multiplexer for endocrine tissue culture and secretion sampling
Creating Biocompatible Oil–Water Interfaces without Synthesis: Direct Interactions between Primary Amines and Carboxylated Perfluorocarbon Surfactants